UID:
almafu_9960073799002883
Umfang:
1 online resource (668 p.)
ISBN:
9780124079373
,
0124079377
Anmerkung:
Includes index.
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Front Cover; Microwave Active Circuit Analysis and Design; Copyright; Contents; Preface; Acknowledgments; List of symbols and abbreviations; About the authors; Section A: Foundations; Chapter 1: Introduction; 1.1 Introduction to microwave electronics; 1.1.1 What Are Microwaves?; 1.1.2 The Importance of Radio Frequency Electronics; 1.1.3 Electromagnetism Basics; 1.2 Properties of materials at microwave frequencies; 1.2.1 Resistivity; 1.2.2 The Skin Effect; 1.2.3 Permittivity and Permeability; 1.2.4 Losses in Dielectric and Magnetic Materials atMicrowave Frequencies
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1.3 Behavior of real components at microwave frequencies1.3.1 Wire; 1.3.2 Resistors; 1.3.3 Capacitors; 1.3.4 Inductors; 1.3.5 Surface Mount Devices; 1.4 The importance of impedance matching; 1.4.1 Maximum Power Transfer; 1.5 Common microwave metrics; 1.5.1 reflection coefficient; 1.5.2 standing wave ratio (SWR); 1.5.3 Return Loss; 1.6 Quality factor, Q; 1.6.1 The Meaning of Q; 1.6.2 Loaded Q and External Q; 1.6.3 Q of a One-Port Resonator; 1.7 Takeaways; Tutorial problems; References; Chapter 2: Transmission line theory; 2.1 Introduction
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2.2 Propagation and reflection on a transmission line2.3 Sinusoidal steady-state conditions: standing waves; 2.4 Primary line constants; 2.5 The Lossless Transmission Line; 2.6 Derivation of the characteristic impedance; 2.7 Transmission lines with arbitrary terminations; 2.7.1 Input Impedance at an Arbitrary Pointon a Terminated Line; 2.7.2 Special Cases: Short-Circuit Line; 2.7.3 Special Cases: Open-Circuit Line; 2.7.4 Special Cases: Matched Line; 2.8 The effect of line losses; 2.8.1 Characteristic Impedance of Lossy Lines; 2.8.2 Dispersion; 2.9 Power considerations; 2.10 Takeaways
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Tutorial Problems References; Chapter 3: Practical transmission lines; 3.1 Introduction; 3.2 Waveguide; 3.3 Co-axial cable; Characteristic impedance of co-axial cable; 3.4 Twisted Pair; 3.5 Microstrip; Synthesis formulas for microstrip; Analysis formulas for microstrip; 3.6 Microstrip discontinuities; 3.6.1 Edge Effects in Microstrip; 3.6.2 Microstrip Gaps and DC Blocks; 3.6.3 Microstrip Bends and Curves; 3.6.4 Microstrip Step Width Change; 3.7 Stripline; 3.8 Coplanar waveguide; 3.9 Takeaways; Tutorial Problems; References; Chapter 4: The Smith Chart; Intended Learning Outcomes
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4.1 Introduction to the Smith Chart4.2 Smith chart derivation; 4.2.1 Derivation of Constant Resistance Circles; 4.2.2 Derivation of Constant Reactance Circles; 4.2.3 Building the Complete Smith Chart; 4.3 Using the smith chart; 4.3.1 Conversion Between Immittance and Reflection Coefficient; 4.3.2 Impedance at Any Point on a Transmission Line; 4.3.3 Constant Q Contours on the Smith Chart; 4.4 Smith chart variants; 4.4.1 Combined Impedance-Admittance Smith Chart; 4.4.2 Compressed Smith Chart; 4.5 Takeaways; Tutorial problems; References; Section B: Microwave circuit analysis
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Chapter 5: Immittance parameters
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English
Weitere Ausg.:
ISBN 9780124078239
Weitere Ausg.:
ISBN 0124078230
Sprache:
Englisch
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